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Surface plasmon resonance extension through two-block metal-conducting polymer nanorods

Author

Listed:
  • Insub Jung

    (Sungkyunkwan University)

  • Minkyung Kim

    (Sungkyunkwan University)

  • Min Kwak

    (Sungkyunkwan University)

  • Geonwoo Kim

    (Hallym University)

  • Minsun Jang

    (Sungkyunkwan University)

  • Sang Min Kim

    (Sungkyunkwan University)

  • Doo Jae Park

    (Hallym University)

  • Sungho Park

    (Sungkyunkwan University
    Sungkyunkwan University)

Abstract

Research on surface plasmon resonance coupling of metallic nanostructures is an important area in the field of plasmonics because distinctive collective optical properties can be realized that are different from the individual constituents. Here we report the localized surface plasmon resonance of hybrid metal-organic nanorods. Colloidal-dispersed Au-PPy nanorods were synthesized as a representative material using a modified electrochemical method, and the collective oscillation properties were systematically investigated by comparing these materials with pure Au nanorods. We observed the extended surface plasmon resonance of a hybrid system. The presence of doped-PPy segments on Au segments induced an enhanced coherent electric field due to the partial contribution of π-electrons on the PPy segment, which led to a red-shifted plasmon feature. Additionally, we demonstrated that surface plasmon resonance extension can be tuned by dopant anions, which demonstrates a way of tuning a dopant-induced plasmonic system.

Suggested Citation

  • Insub Jung & Minkyung Kim & Min Kwak & Geonwoo Kim & Minsun Jang & Sang Min Kim & Doo Jae Park & Sungho Park, 2018. "Surface plasmon resonance extension through two-block metal-conducting polymer nanorods," Nature Communications, Nature, vol. 9(1), pages 1-9, December.
  • Handle: RePEc:nat:natcom:v:9:y:2018:i:1:d:10.1038_s41467-018-03453-z
    DOI: 10.1038/s41467-018-03453-z
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